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利用横向激发大气压CO(2)激光诱导气体等离子体直接分析小孔内食品粉末的新技术。

New technique for the direct analysis of food powders confined in a small hole using transversely excited atmospheric CO(2) laser-induced gas plasma.

作者信息

Khumaeni Ali, Ramli Muliadi, Deguchi Yoji, Lee Yong Inn, Idris Nasrullah, Kurniawan Koo Hendrik, Lie Tjung Jie, Kagawa Kiichiro

机构信息

Department of Physics, Faculty of Education and Regional Studies, University of Fukui, Fukui 910-8507, Japan.

出版信息

Appl Spectrosc. 2008 Dec;62(12):1344-8. doi: 10.1366/000370208786822151.

Abstract

Taking advantage of the differences between the interactions of transversely excited atmospheric (TEA) CO(2) lasers with metal and with organic powder, a new technique for the direct analysis of food powder samples has been developed. In this technique, the powder samples were placed into a small hole with a diameter of 2 mm and a depth of 3 mm and covered by a metal mesh. The TEA CO(2) laser (1500 mJ, 200 ns) was focused on the powder sample surfaces, passing through the metal mesh, at atmospheric pressure in nitrogen gas. It is hypothesized that the small hole functions to confine the powder particles and suppresses the blowing-off of sample, while the metal mesh works as the source of electrons to initiate the strong gas breakdown plasma. The confined powder particles are then ablated by laser irradiation and the ablated particles move into the strong gas breakdown plasma region to be atomized and excited; this method cannot be applied for the case of Nd:YAG lasers because in such case the metal mesh itself was ablated by the laser irradiation. A quantitative analysis of a milk powder sample containing different concentrations of Ca was successfully demonstrated, resulting in a good linear calibration curve with high precision.

摘要

利用横向激发大气压(TEA)CO₂激光器与金属和有机粉末相互作用的差异,开发了一种直接分析食品粉末样品的新技术。在该技术中,将粉末样品放入直径为2 mm、深度为3 mm的小孔中,并用金属网覆盖。TEA CO₂激光器(1500 mJ,200 ns)在氮气气氛下于大气压下聚焦在粉末样品表面,穿过金属网。据推测,小孔的作用是限制粉末颗粒并抑制样品被吹走,而金属网作为电子源引发强烈的气体击穿等离子体。然后,受限的粉末颗粒通过激光辐照被烧蚀,烧蚀的颗粒进入强烈的气体击穿等离子体区域被雾化和激发;这种方法不适用于Nd:YAG激光器的情况,因为在这种情况下金属网本身会被激光辐照烧蚀。成功地对含有不同浓度钙的奶粉样品进行了定量分析,得到了高精度的良好线性校准曲线。

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